IP Library Granted Patent US 12683364
Granted Patent B2
US 12683364 · App. 18/418,398 · Granted Jul 14, 2026

ARC-resistant switch gear enclosure door latch and sealing mechanisms of a switch gear

Inventor: Bernhard Schmidt (Cary, NC)
Assignee: Siemens Industry, Inc.
H02B1/28H02B1/306H02B1/38
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Quick Facts
Patent No.
US 12683364
App. No.
18/418,398
Granted
Jul 14, 2026
Kind
B2
Abstract

An arc resistant switch gear comprises a switchgear enclosure including a circuit breaker a high voltage door and enclosure door latch and sealing mechanisms. These mechanisms are configured to provide a combination of latching and sealing functionality to seal and latch the switchgear enclosure with the high voltage door via a door latching and sealing system in combination with a latch part and a door frame. To remove the circuit breaker out of the switchgear enclosure a door sealing slider which is in the switchgear enclosure must be removed.

Claims (30)

1 . An arc resistant switch gear comprising:

a switchgear enclosure configured to include a circuit breaker,

a high voltage door, and

enclosure door latch and sealing mechanisms configured to provide a combination of latching and sealing functionality to seal and latch the switchgear enclosure with the high voltage door via a door latching and sealing system in combination with a latch part and a door frame, wherein to remove the circuit breaker out of the switchgear enclosure a door sealing slider which is in the switchgear enclosure must be removed, and

wherein the door sealing slider is mounted between two plates that are mounted on the high voltage door and there are two slots in the door sealing slider for moving up and down.

2 . The arc resistant switch gear of claim 1 , wherein the door sealing slider is locked in when a handle is closed such that the door sealing slider can't move up when a force through an arc flash hits the high voltage door.

3 . The arc resistant switch gear of claim 2 , wherein the door sealing slider includes a sealing member disposed along (i). a door bottom side, (ii). a flange of the high voltage door and (iii). enclosure seals along an inside of a bottom part.

4 . The arc resistant switch gear of claim 1 , further comprising:

a handle on the high voltage door that is configured to be rotated and the door sealing slider moves downwards, wherein a 45 deg slot on a door closing ledge lower will change a direction of movement.

5 . The arc resistant switch gear of claim 4 , wherein a sloping surface will change the direction of movement, a door sealing and latching ledge will move and a surface will lock the door sealing and latching ledge in position when the high voltage door is locked.

6 . The arc resistant switch gear of claim 1 , wherein the door latching and sealing system comprises:

a door sealing and latching ledge that is configured to move up and down when a handle on the high voltage door rotates.

7 . The arc resistant switch gear of claim 6 , wherein the door sealing and latching ledge is mounted between a door closing cover lower and a door support lower.

8 . The arc resistant switch gear of claim 6 , wherein when an arc pressure hits the high voltage door, the door sealing and latching ledge will get pressed to a door frame.

9 . The arc resistant switch gear of claim 8 , wherein the door sealing and latching ledge is configured to seal the high voltage door and latch the high voltage door to keep the arc pressure in the arc resistant switch gear.

10 . A method comprising:

providing a switchgear enclosure configured to include a circuit breaker for use in an arc resistant switch gear,

providing a high voltage door, and

providing enclosure door latch and sealing mechanisms configured to provide a combination of latching and sealing functionality to seal and latch the switchgear enclosure with the high voltage door via a door latching and sealing system in combination with a latch part and a door frame, wherein to remove the circuit breaker out of the switchgear enclosure a door sealing slider which is in the switchgear enclosure must be removed, and

wherein the door sealing slider is mounted between two plates that are mounted on the high voltage door and there are two slots in the door sealing slider for moving up and down.

11 . The method of claim 10 , wherein the door sealing slider is locked in when a handle is closed such that the door sealing slider can't move up when a force through an arc flash hits the high voltage door.

12 . The method of claim 11 , wherein the door sealing slider includes a sealing member disposed along (i). a door bottom side, (ii). a flange of the high voltage door and (iii). enclosure seals along an inside of a bottom part.

13 . The method of claim 10 , further comprising:

providing a handle on the high voltage door that is configured to be rotated and the door sealing slider moves downwards, wherein a 45 deg slot on a door closing ledge lower will change a direction of movement.

14 . The method of claim 13 , wherein a sloping surface will change the direction of movement, a door sealing and latching ledge will move and a surface will lock the door sealing and latching ledge in position when the high voltage door is locked.

15 . The method of claim 10 , further comprising:

providing a door sealing and latching ledge that is configured to move up and down when a handle on the high voltage door rotates.

16 . The method of claim 15 , wherein the door sealing and latching ledge is mounted between a door closing cover lower and a door support lower.

17 . The method of claim 15 , wherein when an arc pressure hits the high voltage door, the door sealing and latching ledge will get pressed to a door frame.

18 . The method of claim 17 , wherein the door sealing and latching ledge is configured to seal the high voltage door and latch the high voltage door to keep the arc pressure in the arc resistant switch gear.